Gasser A, Raddatz S, Radunz A, Schmid G H
Lehrstuhl für Zellphysiologie, Fakultät für Biologie, Universität Bielefeld, Germany.
Z Naturforsch C J Biosci. 1999 Mar-Apr;54(3-4):199-208. doi: 10.1515/znc-1999-3-410.
The light-harvesting-complex (LHCP) was isolated from photosystem II of Nicotiana tabacum var. John William's Broadleaf by means of the detergent acetyl-beta-D-glucopyranoside and fractionating centrifugation. The D1-peptide of photosystem II was isolated as a dimer with the molecular mass of 66 kDa from the chlorophyll-deficient tobacco mutant N. tabacum Su/su by means of sodium dodecyl sulfate polyacrylamide gel electrophoresis. Both preparations were characterized by means of the Western blot procedure using monospecific antisera to the proteins of photosystem II and monospecific antisera to lipids with which the lipids bound to peptides were determined. In parallel to this, lipids bound to the isolated LHCP-complex and to the isolated D1-peptide were determined by lipido-chemical methods. The extraction of the isolated core peptide D1 with a mixture of boiling methanol and chloroform and subsequent HPLC-chromatography showed that in the D1-peptide isolated via SDS-polyacrylamide gel electrophoresis, monogalactolipids, phosphatidylglycerol and sulfolipid molecules are bound in the molar ratio 1:3:17. By means of the immunological procedure of Western blotting we were able to show that the 66 kDa band of the isolated dimeric D1 reacts positively only with the antisera to monogalactolipid, sulfolipid, beta-carotene and violaxanthin. With the antiserum to digalactolipid and that to phosphatidylglycerol a positive reaction is only observed if the preparation used in the Western blot is not the isolated D1-peptide but a "total" photosystem II-preparation. The lipid extraction of the LHCP-complex and the subsequent analysis by thin-layer chromatography led to the result that the isolated LHCP complex contained in bound form 3 molecules monogalactolipid, 1 molecule of digalactolipid, 1 molecule of phosphatidylglycerol and 1 molecule of lutein. Less than 1 molecule of sulfolipid, beta-carotene, neoxanthin and violaxanthin are found. In the Western blot analysis only the antiserum to monogalactolipid and phosphatidylglycerol and among the carotenoid antisera only the antisera to beta-carotene, violaxanthin and to neoxanthin reacted. With the antisera to the digalactolipid, to the sulfolipid and the antisera to the xanthophylls, namely to lutein and neoxanthin, a positive reaction occurred only if the material used in the Western Blot was the "total" photosystem II-preparation. By gas chromatography of the fatty acids of the isolated peptide fractions it was shown that, compared to the lipids of photosystem II and of the thylakoid membrane, in lipids of the isolated D1-peptide and of the LHCP-complex the saturation degree of fatty acids is strongly increased. Whereas palmitic acid in chloroplast lipids makes up for only 11% of the fatty acids, this saturated fatty acid increases in the lipids of the LHCP to 20% and makes up for 74% of total fatty acids in the lipids of the D1-peptide. Linoleic and linolenic acids are completely absent and oleic acid makes up for 14% of total fatty acids. In contrast to the lipids of the thylakoid membrane, the lipids bound to proteins/peptides are characterized by a strongly saturated character.
利用去污剂乙酰-β-D-吡喃葡萄糖苷和分级离心法,从烟草品种约翰·威廉姆斯阔叶烟草的光系统II中分离出捕光复合体(LHCP)。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳,从叶绿素缺乏的烟草突变体烟草Su/su中分离出光系统II的D1肽,其为分子量66 kDa的二聚体。通过蛋白质印迹法,使用针对光系统II蛋白质的单特异性抗血清和针对脂质的单特异性抗血清对两种制剂进行表征,以此确定与肽结合的脂质。与此同时,通过脂质化学方法测定与分离的LHCP复合体和分离的D1肽结合的脂质。用沸腾的甲醇和氯仿混合物提取分离的核心肽D1,随后进行高效液相色谱分析,结果表明,通过SDS-聚丙烯酰胺凝胶电泳分离的D1肽中,单半乳糖脂、磷脂酰甘油和硫脂分子的结合摩尔比为1:3:17。通过蛋白质印迹免疫程序,我们能够证明,分离的二聚体D1的66 kDa条带仅与针对单半乳糖脂、硫脂、β-胡萝卜素和紫黄质的抗血清发生阳性反应。只有当蛋白质印迹中使用的制剂不是分离的D1肽而是“完整”的光系统II制剂时,才会观察到与双半乳糖脂抗血清和磷脂酰甘油抗血清的阳性反应。对LHCP复合体进行脂质提取,随后通过薄层色谱分析,结果表明,分离的LHCP复合体中以结合形式含有3个单半乳糖脂分子、1个双半乳糖脂分子、1个磷脂酰甘油分子和1个叶黄素分子。发现硫脂、β-胡萝卜素、新黄质和紫黄质的含量不到1个分子。在蛋白质印迹分析中,只有针对单半乳糖脂和磷脂酰甘油的抗血清,以及在类胡萝卜素抗血清中,只有针对β-胡萝卜素、紫黄质和新黄质的抗血清发生反应。只有当蛋白质印迹中使用的材料是“完整”的光系统II制剂时,才会观察到与双半乳糖脂抗血清、硫脂抗血清以及叶黄素和新黄质等叶黄素抗血清的阳性反应。通过对分离的肽级分的脂肪酸进行气相色谱分析表明,与光系统II和类囊体膜的脂质相比,分离的D1肽和LHCP复合体的脂质中脂肪酸的饱和度显著增加。叶绿体脂质中的棕榈酸仅占脂肪酸的11%,而这种饱和脂肪酸在LHCP的脂质中增加到20%,在D1肽的脂质中占总脂肪酸的74%。亚油酸和亚麻酸完全不存在,油酸占总脂肪酸的14%。与类囊体膜的脂质相比,与蛋白质/肽结合的脂质具有高度饱和的特征。